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Dynamic Characteristics of an In-Contact Head Slider Considering Meniscus Force: Part 3-Wear Durability and Optimization of Surface Energy of Liquid Lubricant Under Perfect Contact Condition

机译:考虑弯月面力的接触式头部滑动器的动态特性:第3部分:完美接触条件下液体润滑剂的耐磨性和表面能的优化

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摘要

The authors developed a computer simulator for in-contact head slider motion where a 3-DOF model of head-suspension assembly was introduced and effects of meniscus force between the slider and the disk were considered. The contact force between a contact pad and a disk surface was taken into account and the dynamic characteristics of an incontact head slider were discussed from the viewpoints of both bouncing vibration and wear durability by not only 3-DOF head-suspension assembly model over a sinusoidal disk surface undulation. In addition to the critical frequency of bouncing, the critical frequency of pressure was introduced. As a result of 3-DOF simulation and 1-DOF analysis, it was found that there exists an optimum surface energy at which the stability of bouncing vibration and wear durability becomes highest under perfect contact condition. Furthermore, the behavior of the optimum point for several design parameters were made clear.
机译:作者开发了用于接触式磁头滑块运动的计算机模拟器,其中引入了3自由度的磁头悬架组件模型,并考虑了滑块和磁盘之间的弯液面力的影响。考虑到接触垫和磁盘表面之间的接触力,并且不仅通过在正弦曲线上的3自由度磁头悬架装配模型,还从弹跳振动和耐磨性的角度讨论了接触式磁头滑块的动态特性。磁盘表面起伏。除了弹跳的临界频率外,还引入了压力的临界频率。作为3-DOF模拟和1-DOF分析的结果,发现存在最佳表面能,在完美接触条件下,在该表面能下弹跳振动的稳定性和耐磨性变得最高。此外,明确了几个设计参数的最佳点的行为。

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